一种快速温和的从十字花科种子中分离芥子酶复合物的方法

Natalia Bellostas, Iben Lykke Petersen, Jens Christian Sørensen, Hilmer Sørensen
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引用次数: 29

摘要

黑芥子酶是一种β-硫代葡萄糖苷酶葡萄糖水解酶,它催化水解芥子糖苷中的硫代葡萄糖苷键,这是一种存在于十字花科植物中的化感化学物质。这些同工酶被发现与其他蛋白质形成复合物;然而,传统的分离程序涉及硫酸铵沉淀和/或离子交换色谱不允许这些配合物的分离。本文报道了一种快速、温和的分离复杂形式黑芥子酶的方法。通过Con A亲和层析和Sephadex G-200凝胶过滤,可以从芸苔、甘蓝、甘蓝型油菜和白芥种子中分离出黑芥子酶复合物。在芸苔属植物中,黑芥子酶形成不同分子量的复合物(500-600 kDa, 270-350 kDa和140-200 kDa),而在白草种子中,只能分离和检测到140-200 kDa的复合物。在所有物种中,同工酶的等电点在4.8 ~ 5.6之间,有的甚至高达6.8。SDS-PAGE证实,黑芥子酶同工酶是由分子量在10 ~ 110 kDa之间的几个蛋白质亚基组成的。黑芥子酶复合物的相对数量和酶活性在不同种类的研究中有所不同。分离天然形式的黑芥子酶复合物对研究硫代葡萄糖苷在自溶条件下的水解具有重要意义。
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A fast and gentle method for the isolation of myrosinase complexes from Brassicaceous seeds

Myrosinase is a β-thioglucosidase glucohydrolase that catalyses the hydrolysis of the thioglucoside bond in glucosinolates, allelochemicals present in Brassicaceous plants. These isoenzymes have been found to form complexes with other proteins; however, traditional isolation procedures involving ammonium sulphate precipitation and/or ion exchange chromatography do not allow for the isolation of these complexes. The present paper reports a fast and gentle procedure for the isolation of myrosinases in the complex form. Partial purification by Con A affinity chromatography followed by Sephadex G-200 gel filtration allowed for the isolation of myrosinase complexes from seeds of Brassica carinata, B. oleracea var. capitata, B. napus and Sinapis alba. Myrosinases in the Brassicas formed complexes of different molecular weight (500–600 kDa, 270–350 kDa and 140–200 kDa) whereas in seeds of S. alba it was only possible to isolate and detect 140–200 kDa complexes. In all species the complexes were formed by isoenzymes with isoelectric points between 4.8 and 5.6 and in some cases up to 6.8. SDS-PAGE confirmed that the myrosinase isoenzymes were composed by several protein subunits of molecular weights ranging between 10 and 110 kDa. The relative amount and enzymatic activity of the myrosinase complexes varied amongst the species studied. The isolation of myrosinase complexes in their native form is of great importance for the study of the hydrolysis of glucosinolates under autolysis conditions.

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